Publication Type:

Conference Paper

Source:

AIP Conference Proceedings, American Institute of Physics Inc., Volume 1859 (2017)

ISBN:

9780735415331

URL:

https://www.scopus.com/inward/record.uri?eid=2-s2.0-85026429969&doi=10.1063%2f1.4990246&partnerID=40&md5=f59dacd194b8069b1b86226b0dd0d6f4

Abstract:

Our life is directly related to energy and its consumption, and the issues of energy research are extremely important and highly sensitive. Scientists and researchers attempt to accelerate solutions for wind energy generation, design parameters under the influence of novel policies adopted for energy management and the concerns for global warming and climate change. The objective of this study is to design a small wind turbine that is optimized for the constraints that come with residential use. The study is aimed at designing a wind turbine for tapping the low speed wind in urban locations. The design process includes the selection of the wind turbine type and the determination of the blade airfoil, finding the maximum drag model and manufacturing of the turbine economically. In this study, the Nautilus turbine is modeled, simulated and the characteristic curves are plotted. The cutting in wind speed for the turbine is around 1m/s. The turbine rotates in a range of 20 rpm to 500 rpm at wind speeds 1m/s to 10m/s On a below average day at noon where the wind speed are usually low the turbine recorded an rpm of 120 (average value) at 4m/s wind speeds. This study focuses on a computational fluid dynamics analysis of compressible radially outward flow. © 2017 Author(s).

Notes:

cited By ; Conference of International Conference on Functional Materials, Characterization, Solid State Physics, Power, Thermal and Combustion Energy 2017, FCSPTC 2017 ; Conference Date: 7 April 2017 Through 8 April 2017; Conference Code:129216

Cite this Research Publication

R. Pramod, Kumar, G. B. V., Harsha, P. S. S., and Kumar, K. A. U., “Design and development of nautilus whorl-wind turbine”, in AIP Conference Proceedings, 2017, vol. 1859.

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